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Biomedical subjects

Y Hu

Publications and source records attributed to Y Hu.

At least 487 records · Page 27Linked to original sources

Intraoperative use of mitomycin in trabeculectomy.

Mitomycin (0.2 mg/ml) was applied intraoperatively to 26 glaucomatous patients (33 eyes) during conventional trabeculectomy procedure. Most of them were considered to be at high risk of surgical failure. The conjunctival flap was fornix-based in 9 patients (11 eyes). The success rate was 84.8% without any serious side effect.

Female↗

Effects of neurosteroid and benz[e]indene enantiomers on GABAA receptors in cultured hippocampal neurons and transfected HEK-293 cells.

The effects of the enantiomers of the neurosteroid, 3 alpha-hydroxy-5 alpha-pregnan-20-one (DHP), and the benz[e]indene, BI-1, on gamma-aminobutyric acid (GABA) responses were studied using whole-cell recording techniques in cultured rat hippocampal neurons and human embryonic kidney cells (HEK-293) transfected with either alpha 1 beta 2 gamma 2 or alpha 6 beta 2 gamma 2 GABAA receptor subunits. At 10 microM, the (+)-enantiomers enhanced currents gated by 2 microM GABA in all cells, whereas the (-)-enantiomers were significantly less effective. The enhancement of 2 microM GABA responses in HEK-293 cells transfected with alpha 6 beta 2 gamma 2 subunits was about half that of hippocampal neurons or HEK-293 cells transfected with alpha 1 beta 2 gamma 2. The lower sensitivity of alpha 6 beta 2 gamma 2 receptors for (+)-DHP and (+)-BI-1 is accounted for by their greater apparent affinity for GABA. When the GABA concentration was decreased to 0.5 microM to take into account the four-fold higher apparent affinity of alpha 6 beta 2 gamma 2 receptors, these receptors exhibited enhancement similar to alpha 1 beta 2 gamma 2 receptors. These results indicate that both native and recombinant GABAA receptors have enantioselective sites at which neurosteroids and benz[e]indenes modulate GABA responses, and that differences in agonist affinity contribute to apparent differences in steroid sensitivity among GABAA receptors.

Animals↗

Enhanced accumulation of free fatty acids in experimental focal cerebral ischemia.

Cerebral ischemia is well known to cause an increase in the level of free fatty acids (FFAs) in rodent species. Such FFA accumulations may signal regional lipid membrane damage and are postulated to participate in the pathogenesis of progressive infarction after cerebral ischemia. In this study we have examined the regional levels of FFAS in the cortices of cats after 8 h of middle cerebral artery occlusion. The levels of specific FFAs (palmitic, stearic, and oleic acids) were 1.5 and 2.0 times higher in the penumbral and dense ischemic regions, respectively, than those in the non-ischemic contralateral region. Although no significant differences were found between the penumbra and dense ischemic regions in the levels of arachidonic acid, the levels of docosahexaenoic acid in both of these regions were significantly higher than those in the contralateral region (P < 0.05). These results suggest that enhanced accumulation of FFAs are regionally distributed after focal ischemia and may contribute to neuronal damage after focal cerebral ischemia in non-rodent species.

Animals↗

Specific expression of the AGL1 MADS-box gene suggests regulatory functions in Arabidopsis gynoecium and ovule development.

Several members of the MADS-box gene family have been shown to be important regulators of flower development, controlling such well-studied early events as the formation of the floral meristem and the specification of floral organ identity. Other floral-specific MADS-box genes, of as yet unknown function, have been isolated by homology and are proposed to be part of a regulatory hierarchy controlling flower development. Some of these genes might regulate later aspects of flower development, such as development of individual floral organs, which is less well studied at the molecular level. This paper presents a detailed analysis of the expression pattern of one such gene from Arabidopsis, AGL1, using RNA in situ hybridization. It is found that AGL1 is specifically expressed in particular regions of the gynoecium and ovule, only during and after floral development stage 7. AGL1 expression at the tip of the growing carpel primordia, along the margins of the ovary valves in developing and mature gynoecia and in specific regions of developing and mature ovules provides important insights into the possible roles of AGL1. It is proposed that AGL1 may have regulatory functions in the structural definition and/or function of the valve margins, in axis maintenance during ovule development, in nutritional supply to the growing ovule and embryo sac, and in pollen tube guidance. In the floral homeotic mutants ag-1, ap3-3 and ap2-2, AGL1 mRNA is expressed in an organ-dependent manner, suggesting that AGL1 is a carpel-specific gene and as such ultimately depends upon the carpel identity gene AG for proper gene expression.

Arabidopsis↗

Central IGF-1 decreases systemic blood pressure and increases blood flow in selective vascular beds.

IGF-1 and its receptors have been identified in many tissues including the central nervous system (CNS). We have previously demonstrated that injection of insulin directly into the cerebral ventricles (ICV) is followed by a drop in mean arterial pressure (MAP) associated with an increase in skeletal muscle blood flow. Given the similarities between the IGF-1 and insulin molecules and their respective receptors, we have investigated the effect of ICV administration of IGF-1 on systemic blood pressure and blood flow in selected vascular beds. ICV cannulas were implanted into normal rats and the animals were allowed to recover for 3 to 4 days. The femoral artery and vein were cannulated for blood pressure monitoring and blood sampling and blood flow probes placed around the iliac, the renal and the superior mesenteric artery were used to assess regional blood flow. ICV injection of IGF-1 resulted in a significant decrease in MAP with a nadir at 15 minutes and a gradual return to baseline by 60 minutes; heart rate increased 40 minutes after the injection. IGF-1 significantly enhanced vascular flow and conductance in the iliac, but not in the renal and superior mesenteric arteries. The effects of IGF-1 were much smaller than those observed previously with equimolar amounts of insulin. We conclude that IGF-1 can decrease MAP by selectively increasing blood flow to skeletal muscle through a direct action on the central nervous system.

Animals↗

Flexible loop in the structure of S-adenosylmethionine synthetase crystallized in the tetragonal modification.

S-Adenosylmethionine synthetase (MAT, ATP:L-methionine S-adenosyltransferase, E.C.2.5.1.6.) plays a central metabolic role in all organisms. MAT catalyzes the two-step reaction which synthesizes S-adenosylmethionine (AdoMet), pyrophosphate (PPi) and orthophosphate (Pi) from ATP and L-methionine. AdoMet is the primary methyl group donor in biological systems. MAT from Escherichia coli was crystallized in the tetragonal modification with space group P4(3)2(1)2 using the same conditions as previously yielded crystals of the hexagonal system [Takusagawa, et al., (1996), J. Biol. Chem. 171, 136-147], except for the crystallization temperature. The structure has been determined by molecular replacement at 3.2 A resolution. The overall structure of the tetrameric MAT in the tetragonal modification is essentially the same as the structure found in the hexagonal modification. However there are two remarkable differences between the structures of two modifications. One is the contents in the active sites (holoform vs. apo-form), and the other is the conformation of the flexible loop over the active site (open vs. closed). These differences in the crystal structures are caused solely by the difference in crystallization temperatures (26 degrees C vs. 4 degrees C). We have interpreted the structural data obtained from the X-ray analyses in conjunction with the results of the mechanistic and sequencing studies in terms of possible dynamic motion of the flexible loop. When a substrate/product binds in the active site (hexagonal modification), the loop becomes disordered, apparently due to flexibility at the entrance of the active site as if it acts as a "mobile loop" during the catalytic reaction. On the other hand, when the temperature is decreased, the dynamic motion of the flexible loop may be reduced, and the loop residues enter the active site and close its entrance (tetragonal modification). Thus, the active site of the tetragonal modification is empty despite the crystals being grown in mother liquor containing a large concentration of phosphate (100 mM). There is no significant displacement of amino acid residues in the active site between the holo and apo forms, suggesting that the flexible loop plays an important role in determination of the contents in the active site. Since the functionally important amino acid residues in the active site are all conserved throughout various species, the structures of the active sites and the mechanism of the catalysis are probably essentially identical in the enzymes from a wide range of organisms. However, the substrate KM and Vmax values of MATs from various species are distributed over a wide range. The amino acid residues in the flexible loop regions are poorly conserved throughout various species. Therefore, the wide differences in catalysis rates of MATs from various speeches may be due to the differences in the composition of the flexible loop.

Amino Acid Sequence↗

A point mutation in the cytb gene of cardiac mtDNA associated with complex III deficiency in ischemic cardiomyopathy.

We report a high incidence of reduced respiratory Complex III activity in heart muscle concomitant with the presence of a specific mutation in cytochrome b (cytb) in patients with ischemic cardiomyopathy. This C-->A mutation at nt 15452 converts the 236th residue of cytb from a leucine to isoleucine, is heteroplasmic and was observed in only 2 of 43 controls. Complex III activity is reduced (> 50%) in 5 of 6 patients with the C-->A15452 mutation suggesting that the cytb mutation is responsible for decreased Complex III activity and may play a role in the pathophysiology of ischemic cardiomyopathy.

Adult↗

Clinical significance of a polymerase chain reaction assay for the detection of Mycobacterium tuberculosis.

Various investigators have reported rapid detection of Mycobacterium tuberculosis (MTB) in clinical samples by polymerase chain reaction (PCR). To improve the specificity and efficiency of PCR, the authors adopted a variety of conditions, then analyzed sputum specimens from 217 patients clinically suspected of having MTB. Sputum samples were sonicated to obtain MTB DNA. The DNA was subjected to PCR using primer sets from the region of 650-900 in MTB. The PCR product was detected by direct gel electrophoresis and Southern blot hybridization using digoxigenin-labeled MTB-specific probe. The results of smears, cultures, and PCR were concordant in 93% (202) of the 217 specimens and discordant in 7% (15). Fifteen of the discordant specimens, all from patients who had received antituberculosis medications for days to months, were PCR positive. Of these, 11 were culture negative and 3 were smear negative. Only one specimen was false negative on PCR. Our results indicate that PCR is the method of choice when clinical suspicion is high, but smears or cultures are negative. When smears are positive, PCR permits rapid distinction between MTB and other mycobacterial infections. Because PCR can detect nonviable MTB DNA, positive PCR should be interpreted in conjunction with clinical information.

Bacteriological Techniques↗

Murine and simian retrovirus models: the threshold hypothesis.

By considering the dynamic relationship between retroviruses and their hosts, we have developed a unifying hypothesis to explain such disparate clinical phenomena as differential pathogenicity of a given virus in adults and neonates, transient infection with clearance of provirus-containing cells, long-term non-progression and vaccine effects of fully pathogenic viruses. The threshold hypothesis predicts that an opportunity exists during acute retroviral infection to influence the ultimate clinical outcome: if virus replication is kept below threshold by any means, including drug therapy or passive immunoprophylaxis with neutralizing antibodies, the host will prevail and win the race.

Animals↗

DNA binding properties of two Arabidopsis MADS domain proteins: binding consensus and dimer formation.

MADS domain proteins are members of a highly conserved family found in all eukaryotes. Genetic studies clearly indicate that many plant MADS domain proteins have different regulatory functions in flower development, yet they share a highly conserved DNA binding domain and can bind to very similar sequences. How, then, can these MADS box genes confer their specific functions? Here, we describe results from DNA binding studies of AGL1 and AGL2 (for AGAMOUS-like), two Arabidopsis MADS domain proteins that are preferentially expressed in flowers. We demonstrate that both proteins are sequence-specific DNA binding proteins and show that each binding consensus has distinct features, suggestion a mechanism for specificity. In addition, we show that the proteins with more similar amino acid sequences have more similar binding sequences. We also found that AGL2 binds to DNA in vitro as a dimer and determined the region of AGL2 that is sufficient for DNA binding and dimerization. Finally, we show that several plant MADS domain proteins can bind to DNA either as homodimers or as heterodimers, suggesting that the number of different regulators could be much greater than the number of MADS box genes.

Amino Acid Sequence↗

Functional domains of the floral regulator AGAMOUS: characterization of the DNA binding domain and analysis of dominant negative mutations.

The Arabidopsis MADS box gene AGAMOUS (AG) controls reproductive organ identity and floral meristem determinacy. The AG protein binds in vitro to DNA sequences similar to the targets of known MADS domain transcription factors. Whereas most plant MADS domain proteins begin with the MADS domain, AG and its orthologs contain a region N-terminal to the MADS domain. All plant MADS domain proteins share another region with moderate sequence similarity called the K domain. Neither the region (I region) that lies between the MADS and K domains nor the C-terminal region is conserved. We show here that the AG MADS domain and the I region are necessary and sufficient for DNA binding in vitro and that AG binds to DNA as a dimer. To investigate the in vivo function of the regions of AG not required for in vitro DNA binding, we introduced several AG constructs into wild-type plants and characterized their floral phenotypes. We show that transgenic Arabidopsis plants with a 35S-AG construct encoding an AG protein lacking the N-terminal region produced apetala 2 (ap2)-like flowers similar to those ectopically expressing AG proteins retaining the N-terminal region. This result suggests that the N-terminal region is not required to produce the ap2-like phenotype. In addition, transformants with a 35S-AG construct encoding an AG protein lacking the C-terminal region produced ag-like flowers, indicating that this truncated AG protein inhibits normal AG function. Finally, transformants with a 35S-AG construct encoding an AG protein lacking both K and C regions produced flowers with more stamens and carpels. The phenotypes of the AG transformants demonstrate that both the K domain and the C-terminal region have important and distinct in vivo functions. We discuss possible mechanisms through which AG may regulate downstream genes.

Arabidopsis↗

Inhibition of murine leukemia virus with poly-2'-O-(2,4-dinitrophenyl)poly[A].

Poly-2'-O-(2,4-dinitrophenyl)poly[A] (DNP-poly[A] is a potent inhibitor of reverse transcriptases from a variety of sources (I. Kang and J. H. Wang, J. Biol. Chem. 269:12024-12031, 1994). In the present study, its inhibitory effect on the reverse transcriptase (RT) from Moloney murine leukemia virus (MuLV) was investigated. DNP-poly[A] was found to enter the virus spontaneously and to completely inhibit the RT within 30 min at 0 degree C. The inhibitor was also spontaneously transported into isolated human lymphocytes and leukocytes at 37 degrees C. Animal studies have demonstrated the effectiveness of DNP-poly[A] as an antiviral drug when administered intraperitoneally at various doses from 1 to 100 mg/kg of body weight. MuLV-infected mice show the presence of RT in their blood as well as increased numbers of leukocytes. After the administration of DNP-poly[A] at a dosage of 100 mg/kg of body weight three times a week over a 3-week period, RT could no longer be detected by an ultrasensitive RT-PCR assay. Autopsy showed that the spleens of infected but untreated mice were enlarged 2- to 10-fold, with fused nodules and the proliferation of large abnormal lymphocytes, whereas the spleens of infected but treated mice resembled the normal spleens of uninfected control mice. These observations indicate that further study of DNP-poly[A] as a general antiretroviral agent is desirable.

Animals↗

Protective effect of the 5-lipoxygenase inhibitor AA-861 on cerebral edema after transient ischemia.

This study examined the effect of AA-861, a specific 5-lipoxygenase inhibitor, on brain levels of leukotriene C4 (LTC4) and correlated any changes with changes in edema formation and cerebral blood flow (CBF) after transient ischemia in gerbils. Brain levels of LTC4 were observed to be increased at 1, 2, and 6 hours of reperfusion following 20 minutes of occlusion. At 2 hours of reperfusion, a pretreatment dose of 1000 mg/kg of AA-861 was required to inhibit more than 90% of the reperfusion-induced increases in brain LTC4. At this dose, inhibition of LTC4 production was observed at 2 and 6 hours of reperfusion. The specific gravity of both the cortex and subcortex was decreased at 6 hours of reperfusion after 20 minutes of occlusion. At 2 hours of reperfusion, no significant difference was observed in the specific gravity of the cortex and subcortex regions of gerbils pretreated with AA-861 or with vehicle, but at 6 hours of reperfusion significant positive differences were observed. Cerebral blood flow decreased to approximately 10% of preocclusion values during occlusion and returned to near-preocclusion values after 10 minutes of reperfusion. No significant differences were observed in regional CBF in the AA-861- and vehicle-pretreated gerbils during reperfusion. These findings indicate that LTC4 production after transient cerebral ischemia may be an important contributor to the development of cerebral edema and that CBF does not mediate the LTC4-involved development of edema.

Animals↗

Insulin-like growth factor-I decreases mean blood pressure and selectively increases regional blood flow in normal rats.

The insulin-like growth factor-I (IGF-I) and its receptors are widely distributed in peripheral vascular tissue, yet their role in the regulation of blood pressure and blood flow remains unknown. This study investigated the effect of IGF-I on blood pressure and selected regional blood flow in normal Wistar rats anesthetized with chloralose/urethane. The femoral artery was cannulated and used to monitor arterial blood pressure. Electromagnetic flow probes were placed around the left common iliac artery, left renal artery, and the superior mesenteric artery, and used to measure blood flow. IGF-I (2.6 micrograms, 5.1 or 10.3 nmol/animal Iv) was injected as a bolus into the femoral vein. Following the injection of IGF-I (10.3 nmol), we observed a significant decrease of plasma glucose (57%) and a significant decrease of mean arterial pressure (MAP) that continued to decline throughout the 60-min experimental period. IGF-I (5.1 nmol) significantly decreased blood glucose by 44% and decreased the MAP by 14% with a nadir at 15 min and recovery after 60 min. A smaller dose of IGF-I (2.6 nmol) did not significantly decrease the blood glucose but resulted in a slight but significant decrease in MAP. The heart rate was increased by 10.3 and 5.1 but not 2.5 nmol of IGF-I. IGF-I (10.3 nmol) was associated with regional vascular responses with a preferential increase in flow of the iliac and superior mesenteric vessels, measured as vascular conductance. IGF-I (5.1 and 2.6 nmol) increased preferentially renal vascular conductance. Preinfusion with L-NAME, a nitric oxide inhibitor, inhibited the effects of IGF-I on flow. We conclude that IGF-I can selectively dilate vascular beds leading to a decrease in blood pressure and that the response to IGF-I is mediated by nitric oxide.

Animals↗

[Human papillomavirus infection and p53 gene mutation in primary lung cancer].

Surgical samples from 40 cases of primary lung cancer were studied by in situ hybridization and polymerase chain reaction (PCR) to detect HPV-DNA in different types of lung cancer. In addition, PCR-RFLP was used to examine mutation of p53 exon 7. The results showed that HPV-DNA positive rate in lung cancer was 55% (22/40 cases), including SCLC (9/9 cases), squamous cell carcinomas (8/16 cases), and adenocarcinomas (5/12 cases). Amplification of p53 exon 7 was seen in 5 of 22 HPV-DNA positive cases. RFLP analysis showed that p53 exon 7 mutation was present in two cases with gene amplification. In HPV-DNA negatives there was only one case with exon 7 amplification but no mutation. SCLC and squamous carcinoma had higher HPV infection rate than other types of lung cancer. The results suggest some relation between HPV infection and p53 gene mutation.

Adenocarcinoma↗

[A study on cryotherapy of experimental posterior penetrating eye injury].

OBJECTIVE: The study was designed to investigate the effects of cryotherapy on intraocular tissues in ocular penetrating injury, and an experimental study was made on rabbits. METHODS: The penetrating injury models in both eyes of 23 (46 eyes) pigmental rabbits were performed. Cryotherapy was applied after the operation in the left eye but not in the right eye (the control) of each animal. All the pupils of the eyes were dilated and examined by ophthalmoscope and B-scan at different time after the operation. Enucleations were performed at 2 weeks, 6 weeks and 3 months and the enucleated eyeballs were examined pathologically by light and electron microscopy. The synchronous fundus and pathological changes were evaluated and analyzed statistically (Pearson Chi-square test). RESULTS: The intraocular reaction and proliferation in cryotreated group was much more severe than those in the control one (P = 0.027), especially in the vitreous (P = 0.016). The incidence of tractional retinal detachment in cryotreated group was higher than that in the control. CONCLUSION: It is suggested that the prophylactic cryotherapy in the posterior penetrating ocular injury of rabbits increase intraocular proliferation.

Animals↗

[The dynamic change in the levels of hydroxyproline in the burned wound].

Hydroxyproline, the main component of collagen, and morphological changes were assayed dynamically in the superficial second-degree burn wounds of rats, with the aim to investigate the change in collagen and its relationship with epidermization of burn wound. The results are as follows. Epidermal layer was lacking and higher levels of OHP were noted in the early days postburn, OHP peaked on the 3rd day, declined to normal on day 10 and day 14 postburn, the latter event was in pace with the epidermization of the burn wound. These results indicated that the levels of collagen in the superficial second-degree burn wound were mainly regulated by epidermal cells. Epidermization might inhibit over-proliferation of collagen. Epidermal derived factor (EDF) might be the main factor regulating the synthesis of collagen in the superficial second-degree burn wound.

Animals↗